
Tan0016298 (gene) Snake gourd v1
Overview
Sequences
The following sequences are available for this feature:
Legend: polypeptideCDSexon Hold the cursor over a type above to highlight its positions in the sequence below.ATGGAAAACGCTTCAAGAAAATGGCGTTTCCAAGGGGATTTGGAACCGAGCAAGCCCATCAATCTCTCAATCTACGCAGCCCTCAACAGGATTAGGCAGAGCCTCGATAAAGACGACCACAGGGTCGTCGTCTCCTTTGGCTATGGCGATCCCTCCATTTCTCCTTGCTATCACATTGACGCAGCCGCTGAAGACGCCATTGCCGATGCTGTTCGCTCTGCTAAGTTTAATTCCTATTCTCCCAGTTTCGGTATTCCCGAAGCAAGAAGGTCTCCCTATTTAACTCTCTTCAAAGTCTTATTTATTATCTCTTTCTTCGGTTTTTGTTTTCCTGAATGGATTGGATTGTAGATTGTGTCGATTAGTTGAATTAATCGATTACCAAACCGTGATTTCAGGGCAGTTGCTGATTTTCTCTCTCGTGATCTTCCGTATCGTTTATCGGCAGATGATGTTTATCTAACAACTGGGTGTAGTCAAGGAATTCAAACCGTATTAACGGCTCTATCTTTCTCTGGCCCAGGCGTCAATGTCTTGCTTCCAAGGCCAGGGTTCCCAATATATGAGATGCGAGCCGATTTCGCTCACATTCAAATTCGCTATTTCGATCTTCTTCCTGAAAAGGATTGGGAAGTCGACCTCGATGCCGTTGAAGCTCTGGCAGACGAGGGAACTGTTGCGCTGGTCATCATCAATCCAGGAAATCCCTGCGGGAGTGTTTATACTCGAGAACATCTGCAGAAGGTTAGTCCATCCATTTTCTGGCTGATAATTTGATCGAAGAGTGAAGTTCGTTTGTGGTTTGTTTCCTTTTAGATTGCAGAAACAGCAAGAAAACTTGGGATTATGGTAATTTCTGATGAAGTTTATGCCAATCTCACTTTTGGCTGTAACCCATTTGTCCCAATGGGAGCATTATCATCAATTGCACCTGTTATTACTCTTGGATCAATATCCAAGAGATGGGTTGTGCCTGGATGGCGATTTGGCTGGATTGTGGCTAATGACCCACATGGGATTCTTCATCAATCTAGGGTCTGATCTCTTTCTTTATCATGTTGGTTTGTGAGAAAGAATCAAAATCTTGTTTCCTGTTTTCATCTGTTTTTTTAATCCTATTCTTTGCTTAGATTGTTGAGCGCATCCAAAGCTATGTGACTTTCACAATGGTCCCTGCAACTTTCATTCAGGTTTGTTATAAGAAATTGAGATAAGAACAAAAACTGCCTTGGTTTCTAAACTGTGATGGTTTCTCAGGCAGCCATTCCTCAAATTTTGGAGGCAACGAAGGAGGATTTCTTCTCCAGAATAAACAACATGCTGAGAGAGGCTGCAGATACATGTTATGAGGGAGTGAATGAAATCCCCTGCATCAGTTGTCCGAGAAAACCAGAAGGCTCCATGTTTATGTTTGTAAGGCCAAAACTAAAACATTATTTGTTATAATGTTTTCAATGTTTAGAAGCATCGCTATGTCTAGTGATCATGTGTTTGTGTTCAATTTCTTGTATGCGTTTTTCCAACATCAAATGCTGTCAATGTTTAGAAGCATCGCTATGTCTACTGATCACTGCTCGTGATCTTCTAAGAGACTAAGAATTTTACCGTTTAACAAAACAATCCCATTTCCTTTTTCTTGCAGGTGAAACTTGATTTGTCCCTTCTGGAAGGCATTGAAGATGATTACGAGTTTTGTGTTCAACTGGCTAAAGAAGAATCTGTCATTATTCTTCCCGGTAAGATCTTATAATGAAGCTTGTAGTTCAGTTTTGTTGCAGAAACTTAATGGTAATTCATGACAAAGAAAGCATCAGTTTAACTATAAGGTGTTTATTATAATTCCAGGCGCTGCAGTTGGGTTGAAGAACTGGTTACGAATATCTTTTGCAATTGATATTGAAGCTCTTAGAGATGGCCTTCGGAGGCTAAAAGCCTTCTGCCAAAGGCATGTTAGAGGCAGCAGTCAAGCTTGATTAATTCAAGCAAAAGATGGTATAAGATTTGAAATAATAGCAGAAACAGAGAAAATAGGTTTGTAGTTTCTCTCATAGTACTTCTGTTATAAAGTTTTTTTTCCCAAAAAAAAAAAAAAAACATTGTAGTGTTTGTTAATGTATTAAATATTACTAGCCTATGTCTTCAAGAGGTGAAATTTGAATCCCTAACTCCACATGTCGTTAAACTTTAAAAAAAGAATTATTCGTGAGGCGAATATAAATATAGATTACTAGTTAAAGACACTTTAACTCTTCTATGACTTTGTAGGTTTACTAAAATAAGCGAAACTAGCTTGAGGATAATTTTCATATACAAGTTTCATAAGATAAAATATCTAAATACACTTTCTTTTTCTTTTTGATAATAGTGTAAATACATTTTCAAAAGTGCTTTATTCTTTCCCTCTCCTCCTAAACTTTTGCAACCGTAACTTTTCCCTCAAAATGTCTGCAAATTTATTTTCTCTTCTCTATTTTAGCTTACGAAATCAATAGCTACTTTCTAACACAAATAAGAGATTCTCCTTATTTCCCAAAACATTAACTTCATATAAATAAGTTCCAAATTAATCTTCACTTTTTCTTAGTTTACACAACCAAATGTGAATGGTAAGGAAAGAAATCTTTACTCACAGACCACTTGTATCACCTTCAAGTTTCAAGTAATGGAAGCTTAGACCCATAACTATTTGGTTTTTGTTTTTAAAAATTATGCTTATTTTTCATAACTTTCCTTCATCATCTCTACAATTAATTCTATCTTTCTTAAGGTACCATTTAAATTTCTAGCCAAATTCCAAAAGCAAAAATAAGTTTTTGAAAACTATTTTTTTTAGTTTTCAAAACTTAACCTAGTTTTTGAAATCATAGGTACAAAGTAGGGGTACATAAGCTGAGTTGGGTTGGGTTATGGAAATATTTTGGACCAACCCAAAAATTCGGGTTGGGTTGGGTCGTCGAGTTATTATTTTTTATTTTAAATTATTTAAAATATTTTTTCTTGAATTAATAACTAAAATCACATAACATTCAAATATCAAATTTCAAATTTCAAAACATCTTAACATTTATTAGAAGTTAAGAAGAAAAATATTAAAAATTGACAAATAATTCATTTATAAGTATATGCAATTAAAATAAAATAAAATAAATATAAACTTTGGGTTGGGTTGGGTCAACTTGAACCTAAAAAACCCAACCCGAGAATCGACTCGAACTTTTTGGTTCCCCAAACTTCTAACCCAACCCTTATGGTTTGGGTTGGGTAGTCCGGATTGTAAGAAAACATAGAAACTCATTGGTAGATGTAGTATTTTTGGACTTATTCTCAAAAACTAAAAACTAAAAACTCATTGGTAAATTGTTATTAAACGGGACTTAAATGATTATCAAACGAAACCTTAAACTCCCAAATTTAACTTTTCCCTTCAAACATTCCCCTCTCTCAAATTCCACATTTTTCACGATAATGAAGAGTGTTTAACTCTGTTTTTGTTTTTCAAATCCAATCACAAACCACATCTTCCCTAAATTTTGATGACCACCTCACACCCCTTCTCCTTTTGCAACGTTGCCACTTTTTTTTATTCAAACATTCTTTTTTTTTTTCTCTTTGACACGAAATTCCAATCTTGTATATATTTTTTTTTTCCTTTTTTTCTCACTTCTTTTAACCTTGGACCAAATATGAAAAGACAAATTTCCCTACTAAGGGGCTATTTAGTAGCGCTTGAGTTCGGAATCGTAATCCTAGGCATCGAAGCCTAGAGGTTTGTCCCTCTGAGGGTTCAAGCCAGGAATCGTAAAATCGTGTGTTGAAAAGTGCAGTGTTCTCAAGCCTCGGGAATCGTAACTTTGTGTGTTGGGGTGCAGTGTGTCAAGCTCCGGGAATCGAGAGAGTTGTGTCTTGGTGTGCGTTTTCTGAACTCTAGGTTTGGTACAGTTTTGTTTCACCTTTTTTCTTTTAGCTATTTCATTCCTTTCAAATTTTTGTAATTGATCTTATGTGAATTGTAGAAGTTAATGTCTAACATGGATCAATTTTTTAAGTAACTTTTCCATGAAACTTTCAATTTAGGTAGTTTTTTGAACACCCATACTACGAGTTTACACATACAAATACATCGTCCAAAAGTGTTGCAACTAACACGAAACAAAAGAACATAAAACGCTTTTGTGCGAAAGAAAAAAAAATTCATTTTTTCTAACTTTTAAAAAAGAAATTACAAAATTGAGTCATTTGAGTGTACATTAAAAAAAAAATACCAAGTTGTTTTTATTTTTTTTTTAAATAAAAATTTCACAAAATTCAAATGTGTTGAGAATAGCATAAAAAAATGTTTATTAGCCATTTTTTAGTTTTATTTTAACCTTTTAAAAATTGACTAGATTGTCGGATTGTTGGAGTGGTCAAGTTGATGAGGTGGTGGGATTGTCGAGGTGGTCGTTGGATTTTTGGTTGTTGGTGGTCATCGGGTCGTCGGAGTTGTTGTTGAAAAGGTCGTTGAGGCAACCATCAATGGTGGCTAGTCGCCGATGTGGTCGTCAGAGTTGTCGTTGTCTGTGGTCGCCGGAGTTGTCACTGGAGTTGTTGTCGAAGTGGTGGTTGAAAAATGGTAACGACAAATGAAAGAGGAAATGAGAAACCAAGTGGTCGCAAGAGGTAACCGTCAACGGTGGTTGAGTCCCTGATGTGATCGTTGTAGTTGTAGTTGTCGTTGTCGGGTGGTCGCTTGGTGTTGTCATCGGAGTTATTGTCGAAGCGGTCACCGAAAATGAAAAACGAAAAATTGAAGAGGAAATGAAAAATCAAGTGTTTTTCAGAGGCAGTCATGATCAACGCTAGTCGTGGTGTGGTCGTCGGAGTTGTCGTTGTTGATGGTGTCGGGTGGTCGCCGGAGTTGTCGCCGGAGTTGTTGCCAAAGTGGTCGTCGGTACGGTCGTCGGAGTTGTCGTTGTCGGTAGTTGTTGAGTGGTCGTCGGAGTTGTCATCGGAGTTGTTGCCAAAGTGGTCGCCTGTGTGGTCGTCGGAGTTTTTATCGGAGTTGTCGTTGTCGGTGGTCGCTGGAGTTTTTACCGGAGTTGTCGTTATCGATGGTCGTCGGTGGTCGCTGGAGTTTTTATCGGAGTTGTCGAAGTAGTCGACAAATGGATGAGAAAAACATGGAACAAATTCCATGAGATTACACTATTGTAACCCATGGGGTTGTATTGTTGTAACCCATGGGAATGAGTTTCAAAACCAAGGATTTGGAACACCTTGCTCCAAACATGGGTTTGGATTTGGATGCCAAACCTATCCAAATCCAAACCCATGGGCTAAACACACCCTAAAAGGCAAGTAGGTCCTTATATTGACCATGTGTAAGGATGATTGGTTGATAAATAGGTGTTGTAACTTTGAAAATGTCGGGATTAAGAAGCAAATTCATGGCGGGCAATCATCGTTGATGTTGACATCTTTAACCACCATCCATGGTTTTGCACCTCTCCAAGAATATTTGAGAGCTTTGATACCAATTGATACAACAAATTTGAAATTAGGTCAAGTCCACAACGAAAGAAGGAAAATTTATCCTAACTATGGGGGAGAACACTCTCAAAATCAAATGTCGGATTCAAAATGATATTTCAAAAGGCTGGTTAAAAAGTGGGTATTTATGAAATTATTCAGTGAGACCACTACAAGTGTATATAGAGAGAAGCACCGCAAATTTATATCAAATGGTTATTAGGGAAAATGAAAATTATTGAATTCATATCCAATGGTTATTATGAAACAGTCACATTGTGACGGTTGCAATTTAATAATTTGTTCTATTTGTATGGCCTTTCAATAAAATAACTCAAAATTAATTAAGTCTAAAATACTAATATTAATTAAATTATATTAATTATCTAATCTTTGTCTCGTCATTAACATGAACCAAAATAATATTTAAGCCTTAAAAAAGACACTATTAGTATCCATGTTAATATCTTCTTCAATAAAAATATTTTAATAACTAAGATAAACTATTCCTCAAATTGCATTGTGCCACAGCCAAGAGTAGATGGAGAGTATATAGAATTTTTGTTGGAATCGTCAATCATATGAGGATTAAACCCCACTTCCATTATTATATTTTGTGCCCCCTTCATTTTTGTCACAAGCCACAAAAATATTGAACGCGCCCTCTTTTTTTTCCTTTATAGTTCAAGATTGGCTGCCTCTTTCATTCTTAGAGCGTCTTTGGAGTGATTTTAAAATGACCAAAATCACTTTTGACATGTCTAAAATCACTTTCCTATCCAAAGTGTGATGTTTGACAATATTAAGCAAATGATTTTGGAAGAATCCAAAATCATTTGAAGTTATTCTCTTTCAATCACTTGGGAGGTGATTCCCAAGTGATTTTTGTCAAGTGATTGTAATTTAAAATGACTATTATTCATTTTTTAAAATAGTATACTTTTAATGAAGAGTAAAAACCATAATCTTTTGTCAAAATTCATAAATTTCCATTAAAAAATGAATTTTTTCAAAACCAAAATCACTATTAAAAGTATAGAACCAAATATGAAAATGATTATATGAAAATAACTTTTAATAAATCAATTACACTAAAATCAATATTTCTAAAATTATTCCCAAACATGCACTGAAATCATTTTCTTTTCAAAAGTGTGATGTTTGACAATATTGAATTGCAAGAATCTAAAATCACTTGGAGTGACTTCTTATCAATCACTTGAGAGGTGATTCCCAGGTAATTTTTATCAAATGATTGGAATTTAAAATGACTATTAATTACTTCATTTTTGAAAAATGTATACTTTTGGTGATGGCTAAAAACAGTTATCTTTTGTAAAAATTCATAAATTTCCATCAAATAATAAATTTTCTCAAAACTGTTACCATTGAATTCATCCGTCATTTTTTACAAAACGGCAAGTTTTCTCTCTCTAAAGTTTTTATATAATGTGTATCTCTTACTTTATTTTTTTTTATCTTTTCATTCATTTTTCTCTATAATGGTTTTAACTTTATTTGAATTTTTTTATTTCTAATTTTTTTTGTTCCTCCCTATCATTTTCGTATATTTTTAAATTTTTTCTCACTAATTTTTGTATCTCTTGTTCTATCTTTTTTGTTCTTGTACTTTTTTGTCCCTAACTAACTCTTAATTCTTTCTCCTCAATCCTCATTATAAATTTTCTTCCTAAAACTTTTATTATCTTACCCATTTTTTTTGTTTATCTCTATCTTTATTTCTCTAATATTTTAATTCATCCATATCTCTGACTTAATGATTATAAAATCCTTTTGAAAACAAACATTAATCATCTTTTTTATAAAATATTTTTAATTAAATTTAAATTCACTTTTACCACGTTTGAATTAAATATTAAAATAATTTATAACTAAATAATTTTTTTAAAAAAATTAATTATAATTAAATCTTTAGCTTAAAACACTTACCAAACATGCTTTTTGAAAATCACTATTAAAAGTGTAGAACCAAACATGAAAATGATTATATGAAAATCACTTTTAATAAATCAATTATAAACAAATCAATGATACTAAAATCAATATTTCCAAAATCATTCCCAAACATGCACTTAATTATTTGATGTTGATTCAGAAATCTGTATGCTTCTTAACAATCATTAATACAAATTTAAACTAAAAGGAGCTCATTCGATCGAGCAATCAGAAGTTCGAATTCTTCCACATCTAAGGGTATGTTTGGGAGTGATTTTGGAGTGAACAAAATCACTTTTGACATGCCTAAAATCACTTTTCTACCAAAAGTGTGATGTTTGGCAATATTAAGCGAGTGATTTTGGAAGAATCCAAAATCATGTGAAGTGATTCTCTTTCAATCACTTGGGAGGTGATTCCCAAGTGATTTTTGTCAAGTGATTGTAATTTAAAAGGACTCTTATTTCATTTTTGGAAATAGTATACTTTTAATGACAGGTAAAAACCGATATCTTTTGTCAAAATTCACAAATTTCCATAAAAAATGTGAATTTTCTCAAAACCGTCTTTATTAAGTTCATCCGTAATTGTTTATAAAATAACAATTTTCTCCCTCTAAAGTTTTTGTAATATGTGTCTTACTTTATTGTTTTTTTTCTTTTAATTCATGTTTGTCACTTTCTTTTCTCTCTAATAGTTTTTACTCTCTTTGATTTTTTTCTAATTTTTTTTTGTTCCTCCCTATAATTTTTTTGTATCTTTTTAAATTTTTTCTCTCTAATATTTTTTTTCATCTCTTTCTACTTGTCCCTAACTAACTTTTTTCCTCATAATTTTAGTTTTTCTTCCTAAAATTTTGATCATCTTACCCAATTTTTTTTTTGTTTATCTCTCTATCTTTGAATTTTACTCTCTTCATTAAATTCTATCTCTGAATTTTTTGTCCCTTCCTTTAAATTTTTTATCCCTCCATATTTCTAATTTTTATCCCTCCAAATATTAGAATAATTTATAACTAAATACTTTTTAAACAGATTGATTATAATTAAATCACTTAGTTTAAAACACTTTATGTTAAAGTTGTTTCCTAAATATGTATTTTAAAAATCACTATTAAAAATGTAGAACCAAATATGAAAATGATTATATGGAAACCATTTTTAATAAATCAATTAGAAACAAATCAATTACACTAAAATCAATATTTCTAAAATCATTCTCAAACATGCCCTAAATGTTATTGAATCTAAAAAAATAAATTTGGGAGCCATTTTTGTTGTAGGAATCAAGATGTTTGGCATCTTCACATGTCAGAATTTTAAATGTCCAACATCTTTAGATTACCATGCTTGTTTTGAAAGAAAAACTTATAAGAATATTTGAGAATATTTAGATAGTCATGTTTGTTTTGCAATATTTATGTATGAGAATATGTTAAAATTATGCATTATACCAATAATAACATTGCTAATCTTTATATAATTTACTTAATTATTAGTTTAATATAATTTAAATGGATATCACATACATTTTGGTGTTTGTTAATTTAATATTATATTTATATATTAATTTATTTTATACTAATATTTATACGTTATTTTATAGAACAAATTAATTTATATTAGTTTGATATTTTTATAAAATATTAACTCAATTTTAAATTAGCTTTATTTTATATCTAAATGAAAAATATAAATATAGTTAACTATATAGGATGATTTATTAGTACATAAATACATTAATTTATTTTTAAATAAAAGATAAAAATATAAGATAAAGAAAATGGATCATAAGAGAAAAAATATCATCAGGGGATGTACTCAACATAAGAATCTTAAAAACTATGTTTGTAAAGGACAACTAAATTTGGGGGCATCCTAGATATCAAATATCTTAATATGTCAAAATATCTCATATTTCCTATAAAAATAAACAAACGAAGTAGGACATAACTCAATTGTTATGATAAATGTATTAACGGACACGAAGATAATTATGCGAATCTCATATTTTTCGATACGATTCCGCTCTCATATAATGAACGATGCAAAATTTCCGATTACGTTGTAACGGTCTCCAATTGTTTCTCCATCATTGATATTTTTTTTTACTCGATTGAAAAAGAGTTGTAGTTAGGTGCAGCTCATTTTTCAATCACAAAAATTCTTTTATAAATTTTTTTTTAAAAAAACTAATTTTTTTTTTAACTCTCCTGTCATATTAGATGGGTACAACTGAGGTTGTACGGAAGTATTTTAGATTGAAAAATATAATGCAGCAGCAGCCAAGTATTTTGAAAAATACATTGCAGCAGCCACCATGCATTTTCTAATCTTCCGGCCCCACCATCCACTGGTTCCGTCTTATTGCTCGTTTGCGTTCCTACAAATCCCATGTACGAACTTTCATTTCCTTCTCACATCAGCACTGTGAAGTGGGTAAGAGAGAGAGACAGCCATGGAGATGAACGGCAACCAGCACTGGAACTTCCACGGCAATGAGGAGCTCAATAAATCCTCCGTTTCAGTTCGTGGTACTCTTAATCTGCTCTGTAACTATCTCAATGCCGATGATCCTCGTCCTGTTATTGCTTTTGGCCGTGCCGACCCTTCTGACTACCCCGGCTTTCGAACTTCTTCATCGATTATTGAAGCCCTCGTCGATGCTGTTCAATCCATGAATTTCAACTCTTATCCTTCCACACACGGCGTTCTTTCGGCCAGGAGGTAACTTACTCTCGTCCCTTTTCTGTTTGCCATTCGTAATTTCATTTTGATTTTAGTCATTGTTACCATCTCCTGCGCTTTTCTGTTTCTGTTTGCTGTATGATTTCTTTCGGATTCTATCAACTTTTGCTTTGACAGCGTCCAGAAATAGGATTTAACACCCCTGTTTTGTTAACATATAAGTTCTTTAGATCTCACACTCAAACGCTACAAAATGATTATGGAACCAACTTAGGGAAAGTAAAAACCAGATTACTTGATTGACTTTCTTTTTTCTCTTTGAGATTCAGAGTACACCTGACATTTTAGAGGCAGATGGATGATGCCCAATCAATTTAGATATACTCATGTTTAGTAAATCATGTTTTCTTGAATGATCCTCAATACGCAACCATCACATGATTGCAAAGGTTATTATCTATGGGCTAAAATAAAGCAGATAGGCTCATTTTTGTTATATCTTCAAATTTGAGTGTAACAAAAACTTACAAGGCTTTATAGCCTCAAAATACAACATTACTGTTTGAATAGTTGTGAGTGTGGCTTTCAAACTTTATGGCCATAATTAGCCTTTTTCTAAATTTGACTTATAAAGTAAATGGCAAGTCTTAAAACTGAAAACACGTTCAAAAGATACTAGAAATTCGATAAGTGAAGCTCCGTTTAAGTAGATTGAAATCCTAATTTTGTAAATAAAGCTTGACTTGGGTTGATGAAAGTTAAAGTTGTCGTCGAAAATGAAAAACAATTAGTGACCGTTTGGTGGTCGTTGGAGTTGTTGTTAAAGTGGTTGTCGGAAATAAAAAACAACAAATGGAAGAGATCGCCGGAGTTGTTGTTGAAGCGATTGCCGAAAATAGAAAACTGCAAATGAAAGAGGAAAACATGAAACAAATCCCATGGGGTTGCACTATTGTAATCCATAGGGTTGTGTTTCAAAATAAAAAATTTTAAATGCATTGGGCCAAACATAGTTTTAAATTTAGATTCCAAACTCAATCAAACCCAAACCAATGCCCCAAAAGGCTTGGGAATGTTTCTTGATTCCTTTCACAAATGTAACTATTAAATAAAGTTAAAAGTGCATTTAATGCATCTTCATGGGTTTAATTGGATAGCAGGTCTAATATATTTTTTTTTCAAGTCTTGTGGCAGGGTGTTAGGGACAACGACCTTTCACATATCTCTACACTAGTATGATATTGTCCACTTTAAGCATAAACCCTATTCCCATGATCTTTCCCTTCTCTAGGGGATGTGGACTTTGGTCGCACTCCCAACAATCCCACTATTAGGGACAACGACACTCCATATATCTCCACATTGGTATGATATTGTCCATTTTGGCACAAGTCCTCATGGTTTTGTTTTTAGTTTCACTCAAAAGGCGTTATACTAATGGAGATAGTGTCCTTTACTTATATATCTATGATCTTGCCTTTCTCTAGCTGATATGGGACTTTTGTCGCACTCCCAACATGCAGTCCCTTTATCAGTATGGTAAATGACAAAAAAAAAAAAAGCCTCAATTTCATCTTAAACAGAGAACAGGAGAAAGAAAACATGTGTAAACATTTTAAAAAGGCTTCCCTCGAAATCGTGAATAAGCATCTTTATAATATACACGTCTCGAAGAACAAGTACTTAAGTGTTGGGTTTGCTTCTATTTTTCCTTAGCCTGCATGCACGCGTCGAGAGGCCTATTCCATAAACGTTGCAGACAAAGTTCATACGTCCTTTATCCATGGTGGTGAATCACTTCCACATTGATGAAGTCTATACCCTTAACGTTGTGTTTGGAGTATATACAAGTTGTTAGGAGTGCTCACAATGTCCCATATTAGCTAGGAAAAGAAAAGATCCATGGTATATAAGTTAGGACAATTATCTCCATTGGTATGAAGCCTTTTGTAGAAAAATAAGCATAATTTTCAAAAACAAAAAATTAAAAACCAAATGGTTATCAAACGAAGTCTTAGGTAGAAAGCATCGACAGAATGGTAGAGCATTATTCATGCCAGGCTTGATATGATATATGTTTTTTCTAGTACAGGGCATTGGCAGAATATATTTCCAAGAGTCTCCCATACCAGTTATCCCCCGATGAGGTATTTCTCACTGTTGGTTGCACACAAGCCATTGAAATCATAATATCTGTACTAGCTCGCCCTGGTGCCAATATCCTGCTTCCTAGACCAGCTTACCCGCATTATGACTCTCGAGCAACTTTTGGACGCCTTGAAATTCGCAATTTTGATCTCATACCAGAAAAGGGCTGGGAAGTTGACCTTGACGCTGTGGAAGCTCTTGCAGATAACAATACTGTCGCTATAGTTATTATCAATCCCAACAACCCCTGCGGCAGTGTCTATACGTACCAGCATCTCAAAGAGGTAATAAGCAATGTTGGTTCTGAGATCGTCTTGATAATTTGTAGTTCCTTCAAATTTCTGCCGATAGTTAAAGCCTTTTCTTGTGGTTGTCGAATTCAGATTGCAGAAACTGCCAGGAAACTTGGGATTTTTGTGATCTCTGATGAAGTTTATGCACATATGGCTTTTGGCAATAAGCCCTTTGTTCCAATGGGCGAGTTTGGATGCATTGCTCCGGTACTAACCCTTGGATCTCTATCAAAGAGGTGGTCTGTTCCAGGCTGGAGATTGGGCTGGATTCTAACCACTGATCCTAATGGCATCCTGAAGAAACATGGGGTTTGTTCAAATTCTTCTTTTTTCCCCATTCATCTTCATATTTGAGGATCTAATAATGTCTATGCGGAAGTAGAAAGATTCTTGCTATTACTTTGTCTCATTTGTTCGGATATCACACATATCTCATTCTTAGCAGATTGTGGAGAGCATTCAGAACTATCTGGACATTACCCCTGATCCCCCAACCTGCATTCAGGTGCTTAAATAGTCCTAGCACTCCAAGTTTTTATCTTTCCTTTTGAGGCCAATTGTTAACGAATAACGATCTTGTTCCTTATTCTGATTTATCTACCCTCACTATTCAGGGTGCAATTCCACAAATTCTTGCAAAAACCAGCGATGAATTCACTTCAGGTCTTCTTGATTTACTGAGAACAAATGCAGATCTTTTGTACGACAAGATCAATGAGATCCCTTGTTTCACTTGCCCAAACAAACCAGAAGGAGCAATGCTTGCAATGGTACCACCATTAAAGAACATAAAAGAACAGGGTTCTTTCTGTTAAGGGAACATTTTGTCTCTTTGATGGATAATATTCGATTTGAAACAGGTGAAGCTGAATCTAGAACAACTTGAAGGCATAAGTGATGATATGGACTTCTGCAGCAAGCTGGCCAAGGAAGAATCTGTACTAATTCTCCCCGGTAATCAACAAATAACATAATTACTGACTTTAATCTAAATGGAGTTAAGGTAATTAAAGAGAGTGAAATGAATGATGGCGACAGGTATTGCCGTTGGGATGAAGAATTGGCTGCGATTGAGCTTTGGAATGGAGCGTTGTTCCATTGAAGATGGTGTGGCAAGGTTGAAAGCCTTCTACGAAAGGCATGCTAGAGCCAACAACAAGCATGCCCCCCATTAA ATGGAAAACGCTTCAAGAAAATGGCGTTTCCAAGGGGATTTGGAACCGAGCAAGCCCATCAATCTCTCAATCTACGCAGCCCTCAACAGGATTAGGCAGAGCCTCGATAAAGACGACCACAGGGTCGTCGTCTCCTTTGGCTATGGCGATCCCTCCATTTCTCCTTGCTATCACATTGACGCAGCCGCTGAAGACGCCATTGCCGATGCTGTTCGCTCTGCTAAGTTTAATTCCTATTCTCCCAGTTTCGGTATTCCCGAAGCAAGAAGGGCAGTTGCTGATTTTCTCTCTCGTGATCTTCCGTATCGTTTATCGGCAGATGATGTTTATCTAACAACTGGGTGTAGTCAAGGAATTCAAACCGTATTAACGGCTCTATCTTTCTCTGGCCCAGGCGTCAATGTCTTGCTTCCAAGGCCAGGGTTCCCAATATATGAGATGCGAGCCGATTTCGCTCACATTCAAATTCGCTATTTCGATCTTCTTCCTGAAAAGGATTGGGAAGTCGACCTCGATGCCGTTGAAGCTCTGGCAGACGAGGGAACTGTTGCGCTGGTCATCATCAATCCAGGAAATCCCTGCGGGAGTGTTTATACTCGAGAACATCTGCAGAAGATTGCAGAAACAGCAAGAAAACTTGGGATTATGGTAATTTCTGATGAAGTTTATGCCAATCTCACTTTTGGCTGTAACCCATTTGTCCCAATGGGAGCATTATCATCAATTGCACCTGTTATTACTCTTGGATCAATATCCAAGAGATGGGTTGTGCCTGGATGGCGATTTGGCTGGATTGTGGCTAATGACCCACATGGGATTCTTCATCAATCTAGGATTGTTGAGCGCATCCAAAGCTATGTGACTTTCACAATGGTCCCTGCAACTTTCATTCAGGCAGCCATTCCTCAAATTTTGGAGGCAACGAAGGAGGATTTCTTCTCCAGAATAAACAACATGCTGAGAGAGGCTGCAGATACATGTTATGAGGGAGTGAATGAAATCCCCTGCATCAGTTGTCCGAGAAAACCAGAAGGCTCCATGTTTATGTTTGTGAAACTTGATTTGTCCCTTCTGGAAGGCATTGAAGATGATTACGAGTTTTGTGTTCAACTGGCTAAAGAAGAATCTGTCATTATTCTTCCCGGCGCTGCAGTTGGGTTGAAGAACTGGTTACGAATATCTTTTGCAATTGATATTGAAGCTCTTAGAGATGGCCTTCGGAGGCTAAAAGCCTTCTGCCAAAGGCATGTAAAAACCGATATCTTTTGTCAAAATTCACAAATTTCCATAAAAAATGTGAATTTTCTCAAAACCGTCTTTATTAAGTTCATCCAGAGAGAGACAGCCATGGAGATGAACGGCAACCAGCACTGGAACTTCCACGGCAATGAGGAGCTCAATAAATCCTCCGTTTCAGTTCGTGGTACTCTTAATCTGCTCTGTAACTATCTCAATGCCGATGATCCTCGTCCTGTTATTGCTTTTGGCCGTGCCGACCCTTCTGACTACCCCGGCTTTCGAACTTCTTCATCGATTATTGAAGCCCTCGTCGATGCTGTTCAATCCATGAATTTCAACTCTTATCCTTCCACACACGGCGTTCTTTCGGCCAGGAGGGCATTGGCAGAATATATTTCCAAGAGTCTCCCATACCAGTTATCCCCCGATGAGGTATTTCTCACTGTTGGTTGCACACAAGCCATTGAAATCATAATATCTGTACTAGCTCGCCCTGGTGCCAATATCCTGCTTCCTAGACCAGCTTACCCGCATTATGACTCTCGAGCAACTTTTGGACGCCTTGAAATTCGCAATTTTGATCTCATACCAGAAAAGGGCTGGGAAGTTGACCTTGACGCTGTGGAAGCTCTTGCAGATAACAATACTGTCGCTATAGTTATTATCAATCCCAACAACCCCTGCGGCAGTGTCTATACGTACCAGCATCTCAAAGAGATTGCAGAAACTGCCAGGAAACTTGGGATTTTTGTGATCTCTGATGAAGTTTATGCACATATGGCTTTTGGCAATAAGCCCTTTGTTCCAATGGGCGAGTTTGGATGCATTGCTCCGGTACTAACCCTTGGATCTCTATCAAAGAGGTGGTCTGTTCCAGGCTGGAGATTGGGCTGGATTCTAACCACTGATCCTAATGGCATCCTGAAGAAACATGGGATTGTGGAGAGCATTCAGAACTATCTGGACATTACCCCTGATCCCCCAACCTGCATTCAGGGTGCAATTCCACAAATTCTTGCAAAAACCAGCGATGAATTCACTTCAGGTCTTCTTGATTTACTGAGAACAAATGCAGATCTTTTGTACGACAAGATCAATGAGATCCCTTGTTTCACTTGCCCAAACAAACCAGAAGGAGCAATGCTTGCAATGGTGAAGCTGAATCTAGAACAACTTGAAGGCATAAGTGATGATATGGACTTCTGCAGCAAGCTGGCCAAGGAAGAATCTGTACTAATTCTCCCCGGTATTGCCGTTGGGATGAAGAATTGGCTGCGATTGAGCTTTGGAATGGAGCGTTGTTCCATTGAAGATGGTGTGGCAAGGTTGAAAGCCTTCTACGAAAGGCATGCTAGAGCCAACAACAAGCATGCCCCCCATTAA ATGGAAAACGCTTCAAGAAAATGGCGTTTCCAAGGGGATTTGGAACCGAGCAAGCCCATCAATCTCTCAATCTACGCAGCCCTCAACAGGATTAGGCAGAGCCTCGATAAAGACGACCACAGGGTCGTCGTCTCCTTTGGCTATGGCGATCCCTCCATTTCTCCTTGCTATCACATTGACGCAGCCGCTGAAGACGCCATTGCCGATGCTGTTCGCTCTGCTAAGTTTAATTCCTATTCTCCCAGTTTCGGTATTCCCGAAGCAAGAAGGGCAGTTGCTGATTTTCTCTCTCGTGATCTTCCGTATCGTTTATCGGCAGATGATGTTTATCTAACAACTGGGTGTAGTCAAGGAATTCAAACCGTATTAACGGCTCTATCTTTCTCTGGCCCAGGCGTCAATGTCTTGCTTCCAAGGCCAGGGTTCCCAATATATGAGATGCGAGCCGATTTCGCTCACATTCAAATTCGCTATTTCGATCTTCTTCCTGAAAAGGATTGGGAAGTCGACCTCGATGCCGTTGAAGCTCTGGCAGACGAGGGAACTGTTGCGCTGGTCATCATCAATCCAGGAAATCCCTGCGGGAGTGTTTATACTCGAGAACATCTGCAGAAGATTGCAGAAACAGCAAGAAAACTTGGGATTATGGTAATTTCTGATGAAGTTTATGCCAATCTCACTTTTGGCTGTAACCCATTTGTCCCAATGGGAGCATTATCATCAATTGCACCTGTTATTACTCTTGGATCAATATCCAAGAGATGGGTTGTGCCTGGATGGCGATTTGGCTGGATTGTGGCTAATGACCCACATGGGATTCTTCATCAATCTAGGATTGTTGAGCGCATCCAAAGCTATGTGACTTTCACAATGGTCCCTGCAACTTTCATTCAGGCAGCCATTCCTCAAATTTTGGAGGCAACGAAGGAGGATTTCTTCTCCAGAATAAACAACATGCTGAGAGAGGCTGCAGATACATGTTATGAGGGAGTGAATGAAATCCCCTGCATCAGTTGTCCGAGAAAACCAGAAGGCTCCATGTTTATGTTTGTGAAACTTGATTTGTCCCTTCTGGAAGGCATTGAAGATGATTACGAGTTTTGTGTTCAACTGGCTAAAGAAGAATCTGTCATTATTCTTCCCGGCGCTGCAGTTGGGTTGAAGAACTGGTTACGAATATCTTTTGCAATTGATATTGAAGCTCTTAGAGATGGCCTTCGGAGGCTAAAAGCCTTCTGCCAAAGGCATGTAAAAACCGATATCTTTTGTCAAAATTCACAAATTTCCATAAAAAATGTGAATTTTCTCAAAACCGTCTTTATTAAGTTCATCCAGAGAGAGACAGCCATGGAGATGAACGGCAACCAGCACTGGAACTTCCACGGCAATGAGGAGCTCAATAAATCCTCCGTTTCAGTTCGTGGTACTCTTAATCTGCTCTGTAACTATCTCAATGCCGATGATCCTCGTCCTGTTATTGCTTTTGGCCGTGCCGACCCTTCTGACTACCCCGGCTTTCGAACTTCTTCATCGATTATTGAAGCCCTCGTCGATGCTGTTCAATCCATGAATTTCAACTCTTATCCTTCCACACACGGCGTTCTTTCGGCCAGGAGGGCATTGGCAGAATATATTTCCAAGAGTCTCCCATACCAGTTATCCCCCGATGAGGTATTTCTCACTGTTGGTTGCACACAAGCCATTGAAATCATAATATCTGTACTAGCTCGCCCTGGTGCCAATATCCTGCTTCCTAGACCAGCTTACCCGCATTATGACTCTCGAGCAACTTTTGGACGCCTTGAAATTCGCAATTTTGATCTCATACCAGAAAAGGGCTGGGAAGTTGACCTTGACGCTGTGGAAGCTCTTGCAGATAACAATACTGTCGCTATAGTTATTATCAATCCCAACAACCCCTGCGGCAGTGTCTATACGTACCAGCATCTCAAAGAGATTGCAGAAACTGCCAGGAAACTTGGGATTTTTGTGATCTCTGATGAAGTTTATGCACATATGGCTTTTGGCAATAAGCCCTTTGTTCCAATGGGCGAGTTTGGATGCATTGCTCCGGTACTAACCCTTGGATCTCTATCAAAGAGGTGGTCTGTTCCAGGCTGGAGATTGGGCTGGATTCTAACCACTGATCCTAATGGCATCCTGAAGAAACATGGGATTGTGGAGAGCATTCAGAACTATCTGGACATTACCCCTGATCCCCCAACCTGCATTCAGGGTGCAATTCCACAAATTCTTGCAAAAACCAGCGATGAATTCACTTCAGGTCTTCTTGATTTACTGAGAACAAATGCAGATCTTTTGTACGACAAGATCAATGAGATCCCTTGTTTCACTTGCCCAAACAAACCAGAAGGAGCAATGCTTGCAATGGTGAAGCTGAATCTAGAACAACTTGAAGGCATAAGTGATGATATGGACTTCTGCAGCAAGCTGGCCAAGGAAGAATCTGTACTAATTCTCCCCGGTATTGCCGTTGGGATGAAGAATTGGCTGCGATTGAGCTTTGGAATGGAGCGTTGTTCCATTGAAGATGGTGTGGCAAGGTTGAAAGCCTTCTACGAAAGGCATGCTAGAGCCAACAACAAGCATGCCCCCCATTAA MENASRKWRFQGDLEPSKPINLSIYAALNRIRQSLDKDDHRVVVSFGYGDPSISPCYHIDAAAEDAIADAVRSAKFNSYSPSFGIPEARRAVADFLSRDLPYRLSADDVYLTTGCSQGIQTVLTALSFSGPGVNVLLPRPGFPIYEMRADFAHIQIRYFDLLPEKDWEVDLDAVEALADEGTVALVIINPGNPCGSVYTREHLQKIAETARKLGIMVISDEVYANLTFGCNPFVPMGALSSIAPVITLGSISKRWVVPGWRFGWIVANDPHGILHQSRIVERIQSYVTFTMVPATFIQAAIPQILEATKEDFFSRINNMLREAADTCYEGVNEIPCISCPRKPEGSMFMFVKLDLSLLEGIEDDYEFCVQLAKEESVIILPGAAVGLKNWLRISFAIDIEALRDGLRRLKAFCQRHVKTDIFCQNSQISIKNVNFLKTVFIKFIQRETAMEMNGNQHWNFHGNEELNKSSVSVRGTLNLLCNYLNADDPRPVIAFGRADPSDYPGFRTSSSIIEALVDAVQSMNFNSYPSTHGVLSARRALAEYISKSLPYQLSPDEVFLTVGCTQAIEIIISVLARPGANILLPRPAYPHYDSRATFGRLEIRNFDLIPEKGWEVDLDAVEALADNNTVAIVIINPNNPCGSVYTYQHLKEIAETARKLGIFVISDEVYAHMAFGNKPFVPMGEFGCIAPVLTLGSLSKRWSVPGWRLGWILTTDPNGILKKHGIVESIQNYLDITPDPPTCIQGAIPQILAKTSDEFTSGLLDLLRTNADLLYDKINEIPCFTCPNKPEGAMLAMVKLNLEQLEGISDDMDFCSKLAKEESVLILPGIAVGMKNWLRLSFGMERCSIEDGVARLKAFYERHARANNKHAPH Homology
BLAST of Tan0016298 vs. ExPASy Swiss-Prot
Match: Q9LVY1 (Tyrosine aminotransferase OS=Arabidopsis thaliana OX=3702 GN=TAT PE=2 SV=1) HSP 1 Score: 516.5 bits (1329), Expect = 5.7e-145 Identity = 241/417 (57.79%), Postives = 318/417 (76.26%), Query Frame = 0
BLAST of Tan0016298 vs. ExPASy Swiss-Prot
Match: A0A0P0VI36 (Nicotianamine aminotransferase 1 OS=Oryza sativa subsp. japonica OX=39947 GN=NAAT1 PE=1 SV=1) HSP 1 Score: 498.8 bits (1283), Expect = 1.2e-139 Identity = 230/421 (54.63%), Postives = 310/421 (73.63%), Query Frame = 0
BLAST of Tan0016298 vs. ExPASy Swiss-Prot
Match: Q9FN30 (Probable aminotransferase TAT2 OS=Arabidopsis thaliana OX=3702 GN=At5g53970 PE=2 SV=1) HSP 1 Score: 479.6 bits (1233), Expect = 7.7e-134 Identity = 220/401 (54.86%), Postives = 293/401 (73.07%), Query Frame = 0
BLAST of Tan0016298 vs. ExPASy Swiss-Prot
Match: Q67Y55 (Probable aminotransferase TAT1 OS=Arabidopsis thaliana OX=3702 GN=At4g28420 PE=2 SV=1) HSP 1 Score: 473.8 bits (1218), Expect = 4.2e-132 Identity = 214/409 (52.32%), Postives = 293/409 (71.64%), Query Frame = 0
BLAST of Tan0016298 vs. ExPASy Swiss-Prot
Match: Q9SIV0 (S-alkyl-thiohydroximate lyase SUR1 OS=Arabidopsis thaliana OX=3702 GN=SUR1 PE=1 SV=1) HSP 1 Score: 468.4 bits (1204), Expect = 1.8e-130 Identity = 207/414 (50.00%), Postives = 296/414 (71.50%), Query Frame = 0
BLAST of Tan0016298 vs. NCBI nr
Match: KAG7034907.1 (Tyrosine aminotransferase [Cucurbita argyrosperma subsp. argyrosperma]) HSP 1 Score: 1212.2 bits (3135), Expect = 0.0e+00 Identity = 611/838 (72.91%), Postives = 666/838 (79.47%), Query Frame = 0
BLAST of Tan0016298 vs. NCBI nr
Match: KAE8075971.1 (hypothetical protein FH972_014649 [Carpinus fangiana]) HSP 1 Score: 1093.6 bits (2827), Expect = 0.0e+00 Identity = 524/871 (60.16%), Postives = 659/871 (75.66%), Query Frame = 0
BLAST of Tan0016298 vs. NCBI nr
Match: GAY65474.1 (hypothetical protein CUMW_241340 [Citrus unshiu]) HSP 1 Score: 972.6 bits (2513), Expect = 2.2e-279 Identity = 473/869 (54.43%), Postives = 621/869 (71.46%), Query Frame = 0
BLAST of Tan0016298 vs. NCBI nr
Match: KAG5597161.1 (hypothetical protein H5410_038393 [Solanum commersonii]) HSP 1 Score: 965.3 bits (2494), Expect = 3.5e-277 Identity = 470/840 (55.95%), Postives = 611/840 (72.74%), Query Frame = 0
BLAST of Tan0016298 vs. NCBI nr
Match: KAG7034906.1 (Tyrosine aminotransferase, partial [Cucurbita argyrosperma subsp. argyrosperma]) HSP 1 Score: 960.3 bits (2481), Expect = 1.1e-275 Identity = 492/870 (56.55%), Postives = 595/870 (68.39%), Query Frame = 0
BLAST of Tan0016298 vs. ExPASy TrEMBL
Match: A0A5N6RDZ4 (Uncharacterized protein OS=Carpinus fangiana OX=176857 GN=FH972_014649 PE=4 SV=1) HSP 1 Score: 1093.6 bits (2827), Expect = 0.0e+00 Identity = 524/871 (60.16%), Postives = 659/871 (75.66%), Query Frame = 0
BLAST of Tan0016298 vs. ExPASy TrEMBL
Match: A0A0D9VF59 (Uncharacterized protein OS=Leersia perrieri OX=77586 PE=3 SV=1) HSP 1 Score: 973.8 bits (2516), Expect = 4.8e-280 Identity = 471/865 (54.45%), Postives = 618/865 (71.45%), Query Frame = 0
BLAST of Tan0016298 vs. ExPASy TrEMBL
Match: A0A2H5QLH5 (Uncharacterized protein OS=Citrus unshiu OX=55188 GN=CUMW_241340 PE=4 SV=1) HSP 1 Score: 972.6 bits (2513), Expect = 1.1e-279 Identity = 473/869 (54.43%), Postives = 621/869 (71.46%), Query Frame = 0
BLAST of Tan0016298 vs. ExPASy TrEMBL
Match: A0A0D9VF57 (Uncharacterized protein OS=Leersia perrieri OX=77586 PE=3 SV=1) HSP 1 Score: 967.2 bits (2499), Expect = 4.5e-278 Identity = 470/879 (53.47%), Postives = 619/879 (70.42%), Query Frame = 0
BLAST of Tan0016298 vs. ExPASy TrEMBL
Match: A0A0D9VF58 (Uncharacterized protein OS=Leersia perrieri OX=77586 PE=3 SV=1) HSP 1 Score: 964.9 bits (2493), Expect = 2.2e-277 Identity = 471/877 (53.71%), Postives = 618/877 (70.47%), Query Frame = 0
BLAST of Tan0016298 vs. TAIR 10
Match: AT5G36160.1 (Tyrosine transaminase family protein ) HSP 1 Score: 516.5 bits (1329), Expect = 4.1e-146 Identity = 241/417 (57.79%), Postives = 318/417 (76.26%), Query Frame = 0
BLAST of Tan0016298 vs. TAIR 10
Match: AT5G53970.1 (Tyrosine transaminase family protein ) HSP 1 Score: 479.6 bits (1233), Expect = 5.5e-135 Identity = 220/401 (54.86%), Postives = 293/401 (73.07%), Query Frame = 0
BLAST of Tan0016298 vs. TAIR 10
Match: AT4G28420.2 (Tyrosine transaminase family protein ) HSP 1 Score: 473.8 bits (1218), Expect = 3.0e-133 Identity = 214/409 (52.32%), Postives = 293/409 (71.64%), Query Frame = 0
BLAST of Tan0016298 vs. TAIR 10
Match: AT2G20610.1 (Tyrosine transaminase family protein ) HSP 1 Score: 468.4 bits (1204), Expect = 1.3e-131 Identity = 207/414 (50.00%), Postives = 296/414 (71.50%), Query Frame = 0
BLAST of Tan0016298 vs. TAIR 10
Match: AT4G28410.1 (Tyrosine transaminase family protein ) HSP 1 Score: 452.6 bits (1163), Expect = 7.2e-127 Identity = 201/414 (48.55%), Postives = 293/414 (70.77%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Snake gourd (anguina) v1
Date Performed: 2021-10-25 Position : 0 Zoom : x 1
Relationships
The following mRNA feature(s) are a part of this gene:
GO Annotation
GO Assignments
This gene is annotated with the following GO terms.
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